Publications
Solutal and thermal buoyancy effects in self-powered phosphatase micropumps. Soft Matter 13, 15, 2800-2807 (2017).
Synthetic quorum sensing in model microcapsule colonies. Proceedings of the National Academy of Sciences of the United States of America 114, 32, 8475-8480 (2017).
shum_and_balazs_-_2017_-_synthetic_quorum_sensing_in_model_microcapsule_col.pdf
Using chemical pumps and motors to design flows for directed particle assembly. Accounts of Chemical Research 51, 11, 2672-2680 (2018).
Flow-driven assembly of microcapsules into three-dimensional towers. Langmuir 34, 8, 2890-2899 (2018).
Fight the flow: the role of shear in artificial rheotaxis for individual and collective motion. Nanoscale 11, 10944-10951 (2019).
Achieving self-sustained motion of particles in solution with chemical pumps. Robotic Systems and Autonomous Platforms 223-249 (2019).at <https://www.sciencedirect.com/science/article/pii/B978008102260300010X>
Patterns of bacterial motility in microfluidics-confining environments. Proceedings of the National Academy of Sciences of the United States of America 118, 17, e2013925118 (2021).
The N-link swimmer in three dimensions: controllability and optimality results. Acta Applicandae Mathematicae 178, 6 (2022).
Boundary-bound reactions: Pattern formation with and without hydrodynamics. Physical Review E 108, 055103 (2023).
Huffman Shum 2023 - Boundary-bound reactions preprint.pdf
Alignment, rising, sticking, and phototaxis: modulating the behavior of hematite micropeanuts. Advanced Material Interfaces 2400741 (2024).at <https://doi.org/10.1002/admi.202400741>
Hydrodynamic interactions between a sedimenting squirmer and a planar wall. Journal of Fluid Mechanics 1010, A24 (2025).
Control of microparticles through hydrodynamic interactions. Journal of Fluid Mechanics 1004, A4 (2025).
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